Benjamin Shassere
Papers
1
Total Citations
36
H-Index
1
About
Benjamin Shassere is a leading researcher in the field of wire-based metal additive manufacturing, with a primary focus on the process-structure-property relationships of engineering alloys. His most-cited work, "Mitigating Scatter in Mechanical Properties in AISI 410 Fabricated via Arc-Based Additive Manufacturing Process" (2020, 36 citations), addresses a critical challenge in scaling up additive manufacturing for industrial applications. Shassere’s research demonstrates how to achieve consistent mechanical performance in large-scale components—such as stamping dies—by optimizing deposition parameters for high-strength materials like AISI 410 stainless steel. This work is pivotal for industries requiring both complex geometries and high deposition rates (above 7 kg/h). By systematically reducing variability in tensile strength and ductility, Shassere has helped bridge the gap between laboratory-scale demonstrations and real-world production. His contributions are essential for advancing the reliability of arc-based additive processes, making them viable for demanding sectors like tooling and aerospace. With a growing citation record, Shassere’s research continues to shape the future of large-format metal manufacturing.
Research Focus
Key Achievements
Top Papers
- 1